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A novel approach to prevent decarburisation through electroless plating

机译:通过无电镀防止脱碳剂的新方法

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摘要

Decarburisation is found as an undesirable consequence of the heat treatment cycle in hot work tool steels. In this work, an increase in the decarburisation resistance of tool steel through the electroless technique is subjected. For this purpose, the surface of the H13 tool steel was deposited by the electrodes Ni-P, Ni-B and Ni-P-B coatings. Since the carbon loss leads to a decrease in the hardness, the micro-hardness method is applied to find the influence of the mentioned coatings on the decarburisation resistance. The measurements show that all the electroless-plated steels possess higher resistance to the loss of carbon compared to the bare surface (as the reference). The results also confirmed that the incorporation of boron in the matrix of the Ni-plated layer, including Ni-B and especially Ni-P-B, prevents metal from decarburisation more effectively. The Ni-P-B coating could reduce the decarburisation depth from 0.15 to 0.035 mm.
机译:发现热处理工具钢中热处理循环的不良后果。 在这项工作中,对刀具钢通过无电技术的脱碳电阻的增加进行。 为此目的,通过电极Ni-P,Ni-B和Ni-P-B涂层沉积H13刀具钢的表面。 由于碳损失导致硬度降低,因此应用微硬度法以找到所述涂层对脱碳抗性的影响。 测量结果表明,与裸露的表面相比,所有化学镀钢的所有无电镀钢都具有更高的碳损失(作为参考)。 结果还证实,在Ni-B和尤其是Ni-P-B的基质中掺入硼,包括Ni-B和尤其是Ni-P-B,可更有效地防止金属脱碳。 Ni-P-B涂层可以将脱碳深度从0.15〜0.035mm降低。

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